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Updated: Mar 6, 2026

Cellular Redox Profiling Using High-content Microscopy
Published on: May 14, 2017
Beyond antioxidants: How ROS-RNS-RSS microdomains encode redox information in health and disease
José Manuel Pérez de la Lastra1, Celia María Curieses Andrés2, Elena Bustamante Munguira2
1Institute of Natural Products and Agrobiology, CSIC-Spanish Research Council, Avda. Astrofísico Fco. Sánchez, 3, 38206, La Laguna, Spain.
None:
Cellular redox biology is governed less by bulk oxidant load than by the coupled behaviour of ROS, RNS, and RSS within spatially restricted microdomains. Within these niches, redox information is written, edited, and erased through competing post-translational modifications, including sulphenylation (-SOH), S-nitrosylation (-SNO), and persulphidation (-SSH). Local proximity to sources such as mitochondria, NOX, and NOS platforms combines with buffering by SOD and peroxidases to shape which routes dominate. Editing by thioredoxin, glutaredoxin, and GSNOR, together with sulphane sulphur flux from trans-sulphuration enzymes and mitochondrial sulphide oxidation, sets the boundary between reversible redox eustress and pathological distress dominated by peroxynitrite chemistry and irreversible oxidation. Using a compartment-aware analytical template across cardiometabolic disease, neurodegeneration, cancer, chronic inflammation, ageing, and innate immunity, we identify recurring mechanistic patterns and explain why global biomarkers can mislead. We then propose context-matched biomarker panels and therapeutic levers, with antimicrobial peptides emerging as redox-modulated effectors of innate defence within this framework. Finally, we outline precision redox pharmacology that raises local distress thresholds without flattening physiological signalling, and we propose a trial-ready agenda centred on compartment-resolved pharmacodynamic anchors.
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